肥厚性心肌病
肌节
肌球蛋白
等长运动
MYH7
肌原纤维
肌病
肌动蛋白
内科学
心肌病
生物
心肌细胞
细胞生物学
内分泌学
心脏病学
肌球蛋白轻链激酶
医学
心力衰竭
作者
William A. Kronert,Kaylyn M. Bell,Meera Viswanathan,Girish C. Melkani,Adriana S. Trujillo,Alice H. Huang,Anju Melkani,Anthony Cammarato,Douglas M. Swank,Sanford I. Bernstein
出处
期刊:eLife
[eLife Sciences Publications Ltd]
日期:2018-08-13
卷期号:7
被引量:37
摘要
K146N is a dominant mutation in human β-cardiac myosin heavy chain, which causes hypertrophic cardiomyopathy. We examined how Drosophila muscle responds to this mutation and integratively analyzed the biochemical, physiological and mechanical foundations of the disease. ATPase assays, actin motility, and indirect flight muscle mechanics suggest at least two rate constants of the cross-bridge cycle are altered by the mutation: increased myosin attachment to actin and decreased detachment, yielding prolonged binding. This increases isometric force generation, but also resistive force and work absorption during cyclical contractions, resulting in decreased work, power output, flight ability and degeneration of flight muscle sarcomere morphology. Consistent with prolonged cross-bridge binding serving as the mechanistic basis of the disease and with human phenotypes, 146N /+ hearts are hypercontractile with increased tension generation periods, decreased diastolic/systolic diameters and myofibrillar disarray. This suggests that screening mutated Drosophila hearts could rapidly identify hypertrophic cardiomyopathy alleles and treatments.
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